Two-component polariton condensate in optical microcavity
Abstract
We present a scheme for engineering the extended two-component Bose-Hubbard model using polariton condensate supported by optical microcavity. Compared to the usual two-component Bose-Hubbard model with only Kerr nonlinearity, our model includes a nonlinear tunneling term which depends on the number difference of the particle in the two modes. In the mean field treatment, this model is an analog to a nonrigid pendulum with a variable pendulum length whose sign can be also changed. We study the dynamic and ground state properties of this model and show that there exists a first-order phase transition as the strength of the nonlinear tunneling rate is varied. Furthermore, we propose a scheme to obtain the polariton condensate wave function.
Cite
@article{arxiv.1407.5199,
title = {Two-component polariton condensate in optical microcavity},
author = {Yong-Chang Zhang and Xiang-Fa Zhou and Guang-Can Guo and Xingxiang Zhou and Han Pu and Zheng-Wei Zhou},
journal= {arXiv preprint arXiv:1407.5199},
year = {2015}
}
Comments
9 pages, 8 figures